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首页> 外文期刊>ACM transactions on reconfigurable technology and systems >An FPGA Logic Cell and Carry Chain Configurable as a 6:2 or 7:2 Compressor
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An FPGA Logic Cell and Carry Chain Configurable as a 6:2 or 7:2 Compressor

机译:FPGA逻辑单元和进位链可配置为6:2或7:2压缩器

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To improve FPGA performance for arithmetic circuits that are dominated by multi-input addition operations, an FPGA logic block is proposed that can be configured as a 6:2 or 7:2 compressor. Compressors have been used successfully in the past to realize parallel multipliers in VLSI technology; however, the peculiar structure of FPGA logic blocks, coupled with the high cost of the routing network relative to ASIC technology, renders compressors ineffective when mapped onto the general logic of an FPGA. On the other hand, current FPGA logic cells have already been enhanced with carry chains to improve arithmetic functionality, for example, to realize fast ternary carry-propagate addition. The contribution of this article is a new FPGA logic cell that is specialized to help realize efficient compressor trees on FPGAs. The new FPGA logic cell has two variants that can respectively be configured as a 6:2 or a 7:2 compressor using additional carry chains that, coupled with lookup tables, provide the necessary functionality. Experiments show that the use of these modified logic cells significantly reduces the delay of compressor trees synthesized on FPGAs compared to state-of-the-art synthesis techniques, with a moderate increase in area and power consumption.
机译:为了提高由多输入加法运算控制的算术电路的FPGA性能,提出了一种可配置为6:2或7:2压缩器的FPGA逻辑模块。过去,压缩器已成功用于VLSI技术中的并行乘法器。但是,FPGA逻辑模块的特殊结构,加上相对于ASIC技术的路由网络的高昂成本,使压缩器在映射到FPGA的通用逻辑时效率低下。另一方面,当前的FPGA逻辑单元已经通过进位链进行了增强,以改善算术功能,例如实现快速三元进位加法运算。本文的内容是一个新的FPGA逻辑单元,专门用于帮助在FPGA上实现高效的压缩树。新的FPGA逻辑单元具有两个变体,可以使用附加的进位链将其分别配置为6:2或7:2压缩器,这些进位链与查找表一起提供必需的功能。实验表明,与最新的综合技术相比,使用这些改进的逻辑单元可以显着减少在FPGA上合成的压缩树的延迟,并且面积和功耗会适度增加。

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